Comprehensive creep compliance characterization of orthotropic materials using an automated system.

IF 1.6 3区 农林科学 Q2 FORESTRY Holzforschung Pub Date : 2025-02-17 eCollection Date: 2025-03-01 DOI:10.1515/hf-2024-0108
Jonas M Maas, Falk K Wittel
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Abstract

Determining the creep compliances of orthotropic composite materials requires experiments in at least three different uniaxial and biaxial loading directions. Up to date, data respecting multiple climates and all anatomical directions are sparse for hygro-responsive materials like Norway spruce. Consequently, simulation models of wood frequently over-simplify creep, e.g., by proportionally scaling missing components or neglecting climatic influences. To overcome such simplifications, an automated computer-controlled climatized creep rack was developed, that experimentally assesses moisture-dependent viscoelasticity and mechanosorption in all anatomical directions. The device simultaneously measures the creep strains of three dogbone tension samples, three flat compression samples, and six Arcan shear samples via Digital Image Correlation. This allows for ascertaining the complete orthotropic compliance tensors while accounting for loading direction asymmetries. This paper explains the creep rack's structure and demonstrates its use by determining all nine independent creep compliance components of Norway spruce at 65 % relative humidity. The data shows that loading asymmetry effects amount up to 18 %. Furthermore, the found creep compliance tensor is not proportional to the elastic compliance tensor. By clustering the compliance components, this work identifies four necessary components to represent the full orthotropy of the compliance tensor, obtainable from not less than two experiments.

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使用自动化系统全面描述各向同性材料的蠕变顺应性。
确定正交异性复合材料的蠕变柔度需要在至少三个不同的单轴和双轴加载方向上进行试验。到目前为止,关于多种气候和所有解剖方向的数据对于像挪威云杉这样的湿响应材料来说是稀疏的。因此,木材的模拟模型经常过度简化蠕变,例如,按比例缩放缺少的组件或忽略气候影响。为了克服这种简化,开发了一个自动化的计算机控制的气候蠕变架,实验评估水分依赖的粘弹性和机械吸附在所有解剖方向。该装置通过数字图像相关技术同时测量3个犬骨拉伸试样、3个平面压缩试样和6个Arcan剪切试样的蠕变应变。这允许确定完整的正交各向异性柔张量,同时考虑加载方向不对称。本文解释了蠕变机架的结构,并通过确定挪威云杉在65 %相对湿度下的所有9个独立蠕变顺从成分来演示其使用。数据表明,加载不对称效应高达18% %。此外,发现蠕变柔度张量与弹性柔度张量不成比例。通过聚类顺应分量,本工作确定了四个必要的分量来表示顺应张量的完整正交异性,可以从不少于两个实验中获得。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Holzforschung
Holzforschung 工程技术-材料科学:纸与木材
CiteScore
4.60
自引率
4.20%
发文量
83
审稿时长
3.3 months
期刊介绍: Holzforschung is an international scholarly journal that publishes cutting-edge research on the biology, chemistry, physics and technology of wood and wood components. High quality papers about biotechnology and tree genetics are also welcome. Rated year after year as one of the top scientific journals in the category of Pulp and Paper (ISI Journal Citation Index), Holzforschung represents innovative, high quality basic and applied research. The German title reflects the journal''s origins in a long scientific tradition, but all articles are published in English to stimulate and promote cooperation between experts all over the world. Ahead-of-print publishing ensures fastest possible knowledge transfer.
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